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Wavelength-interleaved OADMs incorporating optimized multiple phase-shifted FBGs for fiber-radio systems

机译:结合了用于光纤无线电系统的优化多相移FBG的波长交错OADM

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We demonstrate that a single fiber Bragg grating (FBG)-based optical add-drop multiplexer can be used to improve the optical spectral efficiency in a mm-wave WDM-fiber wireless network. The technique employs wavelength interleaving in conjunction with optical single-sideband modulation, together with a single multiphase-shifted fiber Bragg grating. Wavelength optical add-drop features are also demonstrated using the grating, and our results show the performance of the novel grating in terms of channel isolation and add-drop functionality. We perform simulations to optimize placement of the phase shifts when an apodization profile is applied to the grating, in an attempt to minimize in-band and out-of-band transmission-amplitude ripples. Experiments are performed using cascade configurations both with the apodized gratings with optimal phase-shift positions and with the original unoptimized gratings. The experimental results demonstrate how these novel gratings can be used in fiber-radio networks incorporating multiple optical add-drop multiplexers.
机译:我们证明了基于单光纤布拉格光栅(FBG)的光分插复用器可用于提高毫米波WDM-光纤无线网络中的光谱效率。该技术将波长交织与光学单边带调制结合使用,以及单个多相移光纤布拉格光栅。还使用光栅演示了波长光学分插功能,我们的结果显示了新型光栅在通道隔离和分插功能方面的性能。我们执行模拟以将切趾轮廓应用于光栅时优化相移的位置,以尝试最小化带内和带外传输幅度纹波。使用级联配置进行实验,既使用具有最佳相移位置的变迹光栅,也使用原始未优化的光栅。实验结果证明了这些新颖的光栅如何在结合了多个光分插复用器的光纤网络中使用。

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